Celiprolol, a vasodilatory β-blocker, inhibits pressure overload-induced cardiac hypertrophy and prevents the transition to heart failure via nitric oxide-dependent mechanisms in mice

被引:53
|
作者
Liao, YL
Asakura, M
Takashima, S
Ogai, A
Asano, Y
Shintani, Y
Minamino, T
Asanuma, H
Sanada, S
Kim, J
Kitamura, S
Tomoike, H
Hori, M
Kitakaze, M
机构
[1] Osaka Univ, Grad Sch Med, Dept Internal Med & Therapeut, Osaka, Japan
[2] Natl Cardiovasc Ctr, Div Cardiovasc Med, Osaka, Japan
关键词
receptors; adrenergic; beta; heart failure; hypertrophy; nitric oxide;
D O I
10.1161/01.CIR.0000137831.08683.E1
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Background-The blockade of beta-adrenergic receptors reduces both mortality and morbidity in patients with chronic heart failure, but the cellular mechanism remains unclear. Celiprolol, a selective beta(1)-blocker, was reported to stimulate the expression of endothelial NO synthase (eNOS) in the heart, and NO levels have been demonstrated to be related to myocardial hypertrophy and heart failure. Thus, we aimed to clarify whether celiprolol attenuates both myocardial hypertrophy and heart failure via the NO-signal pathway. Methods and Results-In rat neonatal cardiac myocytes, celiprolol inhibited protein synthesis stimulated by either isoproterenol or phenylephrine, which was partially suppressed by N-G-nitro-L-arginine methyl ester (L-NAME). Four weeks after transverse aortic constriction (TAC) in C57BL/6 male mice, the ratio of heart weight to body weight (mg/g) (8.70+/-0.42 in TAC, 6.61+/-0.44 with celiprolol 100 mg.kg(-1).d(-1) PO, P<0.01) and the ratio of lung weight to body weight (mg/g) (10.27 +/- 1.08 in TAC, 7.11 +/- 0.70 with celiprolol 100 mg.kg(-1).d(-1) PO, P<0.05) were lower and LV fractional shortening was higher in the celiprolol-treated groups than in the TAC group. All of these improvements were blunted by L-NAME. Celiprolol treatment significantly increased myocardial eNOS and activated phosphorylation of eNOS. Myocardial mRNA levels of natriuretic peptide precursor type B and protein inhibitor of NO synthase, which were increased in the TAC mice, were decreased in the celiprolol-treated mice. Conclusions-These findings indicated that celiprolol attenuates cardiac myocyte hypertrophy both in vitro and in vivo and halts the process leading from hypertrophy to heart failure. These effects are mediated by a selective beta(1)-adrenergic receptor blockade and NO-dependent pathway.
引用
收藏
页码:692 / 699
页数:8
相关论文
共 30 条
  • [21] Loss of Small Ubiquitin-Like Modifier 1 Protects the Heart From Pressure Overload-Induced Cardiac Hypertrophy and Dysfunction in Mice
    Zheng, Liuying
    Sheng, Huaxin
    Du, Xinping
    Zuo, Guoxing
    Wang, Kuan
    Paschen, Wulf
    Yang, Wei
    CIRCULATION, 2016, 134
  • [22] Hydrogen Sulfide Attenuates Cardiac Dysfunction Following Pressure Overload Induced Hypertrophy and Heart Failure Via Augmentation of Angiogenesis
    Kondo, Kazuhisa
    Bhushan, Shashi
    Condit, Marah E.
    King, Adrienne L.
    Predmore, Benjamin L.
    Lefer, David J.
    CIRCULATION, 2011, 124 (21)
  • [23] The ATP-Binding Cassette Transporter ABCG2 Protects Against Pressure Overload-Induced Cardiac Hypertrophy and Heart Failure by Promoting Angiogenesis and Antioxidant Response
    Higashikuni, Yasutomi
    Sainz, Julie
    Nakamura, Kazuto
    Takaoka, Minoru
    Enomoto, Soichiro
    Iwata, Hiroshi
    Tanaka, Kimie
    Sahara, Makoto
    Hirata, Yasunobu
    Nagai, Ryozo
    Sata, Masataka
    ARTERIOSCLEROSIS THROMBOSIS AND VASCULAR BIOLOGY, 2012, 32 (03) : 654 - U289
  • [24] Upregulated LIMD1 alleviates pressure overload-induced cardiac hypertrophy via inhibits YAP1/AKT/GSK3β signaling
    Xie, Fengwen
    Yuan, Bin
    Zhang, Ye
    Chen, Liru
    Zhong, Yingmei
    Xu, Quan
    PLOS ONE, 2025, 20 (02):
  • [25] Increased Remnant Lipoproteins in Apo E Deficient Mice Induce Coronary Atherosclerosis following Transverse Aortic Constriction and Aggravate the Development of Pressure Overload-Induced Cardiac Hypertrophy and Heart Failure
    Muthuramu, Ilayaraja
    Mishra, Mudit
    De Geest, Bart
    BIOMEDICINES, 2022, 10 (07)
  • [26] STIM1 Inhibits GSK3-Beta to Maintain Cardiac Hypertrophy in a Murine Pressure Overload Induced Heart Failure Model
    Benard, Ludovic O.
    Matasic, Daniel S.
    Oh, Jae Gyun
    Nonnenmacher, Mathieu
    Kohlbrenner, Erik
    Hajjar, Roger J.
    Hulot, Jean-Sebastien
    CIRCULATION, 2014, 130
  • [27] The ATP-Binding Cassette Transporter ABCG2 Protects Against Pressure Overload-Induced Cardiac Hypertrophy and Heart Failure by Promoting Angiogenesis and Antioxidant Response
    Higashikuni, Yasutomi
    Nagai, Ryozo
    Sata, Masataka
    CIRCULATION, 2011, 124 (21)
  • [28] SDPR/Cavin-2 Modulates Apoptosis via PTEN/Akt Signaling Pathway and Deteriorates Cardiac Function in Pressure Overload-Induced Heart Failure
    Higuchi, Yusuke
    Ogata, Takehiro
    Maruyama, Naoki
    Nishi, Masahiro
    Nakanishi, Naohiko
    Sakamoto, Akira
    Tsubata, Hideo
    Matoba, Satoaki
    CIRCULATION, 2017, 136
  • [29] Loss of the Eukaryotic Initiation Factor 2α Kinase General Control Nonderepressible 2 Protects Mice From Pressure Overload-Induced Congestive Heart Failure Without Affecting Ventricular Hypertrophy
    Lu, Zhongbing
    Xu, Xin
    Fassett, John
    Kwak, Dongmin
    Liu, Xiaoyu
    Hu, Xinli
    Wang, Huan
    Guo, Haipeng
    Xu, Dachun
    Yan, Shuo
    McFalls, Edward O.
    Lu, Fei
    Bache, Robert J.
    Chen, Yingjie
    HYPERTENSION, 2014, 63 (01) : 128 - 135
  • [30] Alpha-lipoic acid protects against pressure overload-induced heart failure via ALDH2-dependent Nrf1-FUNDC1 signaling
    Li, Wenjia
    Yin, Lei
    Sun, Xiaolei
    Wu, Jian
    Dong, Zhen
    Hu, Kai
    Sun, Aijun
    Ge, Junbo
    CELL DEATH & DISEASE, 2020, 11 (07)